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Plastic shrinkage cracking of concrete incorporating mineral admixtures and its mitigation

机译:掺入矿物掺合料的混凝土的塑性收缩开裂及其缓解

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48.1-48.10%In recent years, there has been a rapid increase in the use of mineral admixtures for high performance and durable concrete. Plastic shrinkage cracking in such concretes is a serious concern in large surface area/volume applications. The present study has two objectives: firstly, to investigate the influence of incorporating fly ash and granulated blast furnace slag (GGBS) on the susceptibility to such cracking; and secondly, to assess the techniques, such as fibre and shrinkage reducing admixture (SRA) addition, and spraying of curing compounds, to mitigate the cracking. The results indicate that replacement of ordinary Portland cement (OPC) with fly ash and GGBS increases the possibility of plastic shrinkage cracking significantly, with higher severity as the replacement level increases; 30% replacement of OPC with fly ash and GGBS doubled and quadrupled the crack area, respectively, mainly due to higher binder finesses, and the delay of setting and strength gain. Among the fibres tested, polypropylene and polyester fibres, at the recommended dosages of about 0.9 kg/m(3), completely eliminated cracking in the most affected concrete (i.e., with 30% GGBS) while the dosages of the polyacrylonitrile and glass fibres had to be increased to provide a higher volume fraction. Two glycol-based SRAs, and two curing compounds based on acrylic resin and methacrylate mitigated cracking by significantly reducing evaporation from the surface of concrete.
机译:48.1-48.10%近年来,高性能和耐用混凝土中矿物掺合料的使用迅速增加。在大表面积/大体积应用中,这种混凝土中的塑料收缩裂缝是一个严重的问题。本研究有两个目的:首先,研究掺入粉煤灰和高炉矿渣(GGBS)对这种开裂敏感性的影响;其次,评估技术,例如添加纤维和减缩减缩剂(SRA),以及喷涂固化剂以减轻裂纹。结果表明,用粉煤灰和GGBS代替普通硅酸盐水泥(OPC)显着增加了塑料收缩开裂的可能性,并且随着置换水平的提高,其严重性也越来越高。用粉煤灰和GGBS代替OPC的30%分别使裂纹面积增加了一倍和两倍,这主要是由于更高的粘合剂细度以及凝固和强度增加的延迟。在测试的纤维中,建议用量约0.9 kg / m的聚丙烯和聚酯纤维(3)完全消除了受影响最大的混凝土(即GGBS含量为30%)中的开裂,而聚丙烯腈和玻璃纤维的用量为增加以提供更高的体积分数。两种基于乙二醇的SRA,以及两种基于丙烯酸树脂和甲基丙烯酸酯的固化剂,可显着减少混凝土表面的蒸发,从而减轻了开裂。

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